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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Insights into DDT Resistance from the Drosophila melanogaster Genetic Reference Panel
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Insights into DDT Resistance from the Drosophila melanogaster Genetic Reference Panel

机译:从果蝇黑素转酯遗传方案参考专家组的DDT抗性抗震症

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摘要

Insecticide resistance is considered a classic model of microevolution, where a strong selective agent is applied to a large natural population, resulting in a change in frequency of alleles that confer resistance. While many insecticide resistance variants have been characterized at the gene level, they are typically single genes of large effect identified in highly resistant pest species. In contrast, multiple variants have been implicated in DDT resistance in Drosophila melanogaster; however, only the Cyp6g1 locus has previously been shown to be relevant to field populations. Here we use genome-wide association studies (GWAS) to identify DDT-associated polygenes and use selective sweep analyses to assess their adaptive significance. We identify and verify two candidate DDT resistance loci. A largely uncharacterized gene, CG10737, has a function in muscles that ameliorates the effects of DDT, while a putative detoxifying P450, Cyp6w1, shows compelling evidence of positive selection.
机译:杀虫剂抗性被认为是微型的经典模型,其中强烈的选择剂应用于大天然群体,导致赋予电阻的等位基因频率的变化。 虽然许多杀虫剂抗性变体已经表征在基因水平上,但它们通常是在高度耐抗虫物种中鉴定的大效果的单一基因。 相比之下,多种变体涉及Drosophila Melanogaster中的DDT抗性; 但是,只有CYP6G1基因座已被证明与现场群体相关。 在这里,我们使用基因组关联研究(GWAs)来鉴定DDT相关的多根,并使用选择性扫描分析来评估它们的适应性意义。 我们识别并验证了两个候选DDT电阻基因座。 一种大量不表达的基因CG10737在肌肉中具有改善DDT的效果的肌肉功能,而推定的解毒P450,CYP6W1示出了积极选择的令人信服的证据。

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